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Gave this to a client of mine who was visiting me for some advice after she had been constipated for 4 days. She had a bowel movement just 2 hours later.
Couple of question for you. How many times a day should or can I use this complex? If I'm imprinting and drinking as soon as it's done, is there a specific amount of water I should use? And is it the same amount for all IC's and Complexes if I'm... 查看更多
Couple of question for you. How many times a day should or can I use this complex? If I'm imprinting and drinking as soon as it's done, is there a specific amount of water I should use? And is it the same amount for all IC's and Complexes if I'm drinking as soon as it imprints or do certain IC's and Complexes need different amounts of water?
Lon Allen, we recommend using the same imprint IC or Complex at least 3 times a day, drinking at least 50ml (2oz) of water each time. You can imprint a bottle of regular water and drink it for 3 days, it will be more convenient than imprinting 3 times... 查看更多
Lon Allen, we recommend using the same imprint IC or Complex at least 3 times a day, drinking at least 50ml (2oz) of water each time. You can imprint a bottle of regular water and drink it for 3 days, it will be more convenient than imprinting 3 times a day. The amount of water is the same for all ICs and Complexes. Drinking water more often will have a stronger effect. It is also okay to drink more water at one time.
Angelika Pfeifer, yes, that and regular plastic bottles would hold imprint for 3 days. Plastic and glass does not shield from smog EMF, therefore we recommend to store water at least 1 meter away from electromagnetic field sources.
Angelika Pfeifer, yes, that and regular plastic bottles would hold imprint for 3 days. Plastic and glass does not shield from smog EMF, therefore we recommend to store water at least 1 meter away from electromagnetic field sources.
Ciao , sono un appassionato in elettronica e di salute, e mi chiedevo come fa l' IC pad ad emettere tutte le varie frequenze con un unica bobina.... si sa dalla fisica che un solenoide puo oscillare bene ad una sola frequenza in base alle sue dimensioni...se si fa oscillare... 查看更多
Ciao , sono un appassionato in elettronica e di salute, e mi chiedevo come fa l' IC pad ad emettere tutte le varie frequenze con un unica bobina.... si sa dalla fisica che un solenoide puo oscillare bene ad una sola frequenza in base alle sue dimensioni...se si fa oscillare a frequenze diverse allora il suo campo magnetico sarà molto indebolito e non efficace,,,,grazie
Hi Angelo, you are correct each coil has particular parameters that determine the resonance frequency of the coil. But you can still emit a wide spectrum of frequencies. For example, a simple speaker also has one coil and can output a wide range of frequencies.
Hi Angelo, you are correct each coil has particular parameters that determine the resonance frequency of the coil. But you can still emit a wide spectrum of frequencies. For example, a simple speaker also has one coil and can output a wide range of frequencies.
using this analogy - just as a speaker can modulate the current through its coil to produce a wide range of sound frequencies, an IC pad can modulate the current through its coil to generate a variety of electromagnetic frequencies. The key in both cases is the ability to precisely control the electrical signal (in terms of frequency, amplitude, and waveform) applied to the coil.
Anton SFAnton SF grazie,capisco, non vedo l’ora che mi arriva il dispositivo per fare le prove 🙂 ma volendo essere scientifico si potrebbe esaminare l acqua informata ad esempio con un microscopio o altri tipi di test? Scusami ma a me piace dimostrare e verificare una verità altrimenti potrebbe... 查看更多
Anton SFAnton SF grazie,capisco, non vedo l’ora che mi arriva il dispositivo per fare le prove 🙂 ma volendo essere scientifico si potrebbe esaminare l acqua informata ad esempio con un microscopio o altri tipi di test? Scusami ma a me piace dimostrare e verificare una verità altrimenti potrebbe essere un placebo…
Angelo, with a regular microscope you probably would not see much difference. But you can use for example electro-impedance spectroscopy, for example, such a tool (it has many applications, but it is very sensitive and can measure change in water): https://www.infopathy.com/en/products/m-i-n-d-pro
Angelo, with a regular microscope you probably would not see much difference. But you can use for example electro-impedance spectroscopy, for example, such a tool (it has many applications, but it is very sensitive and can measure change in water): https://www.infopathy.com/en/products/m-i-n-d-pro
Angelo, that device is based on an electrochemical impedance spectroscopy-water sensor. It has various applications. It is so sensitive that you can affect water samples with your mind at a distance.
Angelo, that device is based on an electrochemical impedance spectroscopy-water sensor. It has various applications. It is so sensitive that you can affect water samples with your mind at a distance.
Anton SF mi potresti mandare più informazioni?…parli del mind pro?…purtroppo costa molto ma vorrei almeno avere più dettagli e informazioni, me le puoi mandare se ce l’hai? Grazie
Anton SF mi potresti mandare più informazioni?…parli del mind pro?…purtroppo costa molto ma vorrei almeno avere più dettagli e informazioni, me le puoi mandare se ce l’hai? Grazie
Anton SF scusami tanto delle mie domande , per me è un onore e privilegio parlare con te ma son molto entusiasto di questa tecnologia che da tempo cercavo e vorrei capirne di piu e anche sperimentarla...per esempio ho visto da un tuo video che sono state fatte delle foto... 查看更多
Anton SF scusami tanto delle mie domande , per me è un onore e privilegio parlare con te ma son molto entusiasto di questa tecnologia che da tempo cercavo e vorrei capirne di piu e anche sperimentarla...per esempio ho visto da un tuo video che sono state fatte delle foto dei composti "replicati" . Io come potrei fare in modo da vederli anche io come da foto? grazie image.png656.6 KB
Angelo, thank you for your questions! On that slide I am showing photos or the source samples, from which ICs are recorded. When you imprint water you create a coherent domains that mimic electromagnetic spectrum of the source substances. I would recommend watching documentary on YouTube titled "Luc Montagnier... 查看更多
Angelo, thank you for your questions! On that slide I am showing photos or the source samples, from which ICs are recorded. When you imprint water you create a coherent domains that mimic electromagnetic spectrum of the source substances. I would recommend watching documentary on YouTube titled "Luc Montagnier water memory 2014".
Anton SF si grazie gia lo conoscevo....ma si puo fare qualcosa , qualche esperimento a casa senza costose apparecchiature per dimostrare una parte di questi fenomeni? anche degli IC ...
Anton SF si grazie gia lo conoscevo....ma si puo fare qualcosa , qualche esperimento a casa senza costose apparecchiature per dimostrare una parte di questi fenomeni? anche degli IC ...
Anton SF grazie! Ma dimmi: sappiamo che anche i nostri pensieri ed emozioni influenzano fortemente ciò che ci circonda…come fai a capire se è la tua energia o invece il composto o pemf o suoni che effettua il cambiamento??
Anton SF grazie! Ma dimmi: sappiamo che anche i nostri pensieri ed emozioni influenzano fortemente ciò che ci circonda…come fai a capire se è la tua energia o invece il composto o pemf o suoni che effettua il cambiamento??
Angelo, that is true, to eliminate that you can do a blind or double-blind experiment:
Blind Experiment:
Objective: To evaluate the impact of an imprinted water complex on seed germination rates and plant growth compared to untreated water.
Setup:
Control Group: Seeds watered with regular, untreated... 查看更多
Angelo, that is true, to eliminate that you can do a blind or double-blind experiment:
Blind Experiment:
Objective: To evaluate the impact of an imprinted water complex on seed germination rates and plant growth compared to untreated water.
Setup:
Control Group: Seeds watered with regular, untreated water.
Experimental Group: Seeds watered with water treated with the 植物生長促進劑 complex.
Blinding:
Participants (e.g., those planting the seeds and monitoring growth) do not know which seeds are treated with the imprinted water and which are not.
Procedure:
Prepare two sets of identical seeds under the same environmental conditions (soil type, pot size, indoor environment, etc.).
Water one set with the treated water and the other with untreated water, without revealing which is which to the caretaker.
Regularly measure germination rates, plant height, leaf number, and overall health for a predefined period.
Data Analysis:
Compare germination rates, growth metrics, and health between the two groups.
Use statistical analysis to determine if differences are significant.
Double-Blind Experiment:
Objective: Same as the blind experiment, with an additional layer of blinding to further reduce bias, thoughts, and emotional influence.
Setup: Identical to the blind experiment with control and experimental groups.
Double-Blinding:
Neither the participants (those involved in planting, watering, and data collection) nor the researchers analyzing the results know which group is which until after the data analysis is complete.
Procedure:
A third party labels the water containers with codes that do not reveal their contents (treated vs. untreated) and keeps a record of the codes.
The experiment is conducted in the same manner as the blind experiment, with measurements taken regularly.
Data Analysis:
After collecting the data, the code is revealed to analyze the impact of the treatment on plant growth.
Statistical tests are applied to assess the significance of any observed differences between the groups
Both blind and double-blind experiments are designed to minimize the influence of biases, including the "power of thought" or the idea that the expectations or beliefs of the experimenters (or participants) can influence the results. Here's how these designs help mitigate such effects: Blind Experiments:
In a blind experiment, the individuals directly interacting with the experiment (e.g., watering the plants or measuring their growth) do not know which treatment each group is receiving. This setup aims to prevent their beliefs or expectations (such as the belief in the efficacy of the treatment) from affecting their behavior and, consequently, the outcome of the experiment. For example, if someone believes in the power of the Imprinted water, they might unconsciously treat those plants more carefully or optimistically, which could bias the results.
Double-Blind Experiments:
Double-blind experiments add an additional layer of blinding by ensuring that neither the participants nor the researchers analyzing the results know which group received which treatment until after the data have been collected and analyzed. This method is particularly effective at minimizing biases, including the "power of thought," because it removes any possibility for both the caretakers and the data analysts to influence the results based on their expectations or beliefs.
For instance, a researcher who strongly believes in the positive effects of the imprinted water might unconsciously interpret ambiguous data in a more favorable light if they know which group received the treatment. Double-blinding prevents this by ensuring that the researchers' expectations cannot influence their analysis of the data.
Additional Measures:
Randomization: Random assignment of treatments to different groups helps ensure that any external factors, including potential psychokinetic effects, are evenly distributed across both the control and experimental groups.
Standardization: Keeping all conditions except for the treatment the same for all groups helps ensure that any differences observed are due to the treatment itself and not other variables.
Replication: Repeating the experiments multiple times or in different settings can help confirm the results are consistent and not the product of chance or unusual circumstances.